Search results for "Halite"

showing 6 items of 16 documents

Freshening of the Mediterranean Salt Giant: controversies and certainties around the terminal (Upper Gypsum and Lago-Mare) phases of the Messinian Sa…

2021

The late Miocene evolution of the Mediterranean Basin is characterized by major changes in connectivity, climate and tectonic activity resulting in unprecedented environmental and ecological disruptions. During the Messinian Salinity Crisis (MSC, 5.97-5.33 Ma) this culminated in most scenarios first in the precipitation of gypsum around the Mediterranean margins (Stage 1, 5.97-5.60 Ma) and subsequently > 2 km of halite on the basin floor, which formed the so-called Mediterranean Salt Giant (Stage 2, 5.60-5.55 Ma). The final MSC Stage 3, however, was characterized by a "low-salinity crisis", when a second calcium-sulfate unit (Upper Gypsum; substage 3.1, 5.55-5.42 Ma) showing (bio)geochemica…

Mediterranean climate010504 meteorology & atmospheric sciencesSettore GEO/02 - Geologia Stratigrafica E SedimentologicaGeochemistryMediterranean stratigraphyEarth and Planetary Sciences(all)[SDU.STU]Sciences of the Universe [physics]/Earth SciencesStructural basinengineering.materialLate MioceneMessinian Salinity Crisis010502 geochemistry & geophysics01 natural sciencesMediterranean BasinParatethyLago-MareConnectivity proxie14. Life underwaterComputingMilieux_MISCELLANEOUS0105 earth and related environmental sciencesParatethysBrackish waterTerrigenous sedimentMessinian Salinity CrisiSettore GEO/01 - Paleontologia E PaleoecologiaSettore GEO/08 - Geochimica E Vulcanologia13. Climate actionPaleogeographyFaciesengineeringGeneral Earth and Planetary SciencesHaliteGeologyConnectivity proxies
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Ages and stratigraphical architecture of late Miocene deposits in the Lorca Basin (Betics, SE Spain): New insights for the salinity crisis in margina…

2020

International audience; Unlike most Neogene basins of the Betic Cordillera where the Salinity Crisis is dated to the Messinian, a contradictory Tortonian dating was proposed for evaporites of the Lorca Basin. As a consequence, complex structural models have been proposed in the literature to explain this discrepancy in the timing of evaporites. In order to integrate the Lorca Basin into the geological context of the western Mediterranean domain during the Late Miocene, new sedimentological and stratigraphical studies coupled with new dating were performed, which allow us to propose a Messinian age for both diatomite-bearing deposits and evaporites of the Lorca Basin. These new ages challeng…

Mediterranean climate010506 paleontologyEvaporiteStratigraphyStructural basinLate Mioceneengineering.material010502 geochemistry & geophysicsNeogene01 natural sciencesUnconformityBase-level fluctuationsPaleontologyMessinian0105 earth and related environmental sciencesTortonianBrackish waterGeologySalinity crisisBeticss Lorca BasinSpain[SDU]Sciences of the Universe [physics]Lorca Basin[SDU.STU.ST]Sciences of the Universe [physics]/Earth Sciences/StratigraphyBase-level fluctuationengineeringHaliteGeology
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Two Years at Meridiani Planum: Results from the Opportunity Rover

2006

The Mars Exploration Rover Opportunity has spent more than 2 years exploring Meridiani Planum, traveling ∼8 kilometers and detecting features that reveal ancient environmental conditions. These include well-developed festoon (trough) cross-lamination formed in flowing liquid water, strata with smaller and more abundant hematite-rich concretions than those seen previously, possible relict “hopper crystals” that might reflect the formation of halite, thick weathering rinds on rock surfaces, resistant fracture fills, and networks of polygonal fractures likely caused by dehydration of sulfate salts. Chemical variations with depth show that the siliciclastic fraction of outcrop rock has undergon…

Meridiani PlanumGeologic SedimentsExtraterrestrial EnvironmentOutcropGeochemistryMarsMineralogyWeatheringengineering.materialFerric CompoundsTimeConcretionSpacecraftMineralsMultidisciplinarySulfatesSilicatesWaterHematitevisual_artengineeringvisual_art.visual_art_mediumHaliteSedimentary rockSiliciclasticAcidsGeologyScience
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Major and trace element compositions (including REE) of mineral, thermal, mine and surface waters in SW Germany and implications for water–rock inter…

2013

Abstract The near-surface water cycle in a geologically complex area comprises very different sources including meteoric, metamorphic and magmatic ones. Fluids from these sources can react with sedimentary, magmatic and/or metamorphic rocks at various depths. The current study reports a large number of major, minor and trace element analyses of meteoric, mineral, thermal and mine waters from a geologically well-known and variable area of about 200 × 150 km in SW Germany. The geology of this area comprises a Variscan granitic and gneissic basement overlain in parts by Triassic and Jurassic shales, sandstones and limestones. In both the basement and the sedimentary rocks, hydrothermal mineral…

Metamorphic rockGeochemistryTrace elementMineralogyengineering.materialPollutionchemistry.chemical_compoundBasement (geology)chemistryGeochemistry and PetrologyengineeringEnvironmental ChemistryCarbonateHaliteSedimentary rockClay mineralsGeologyGneissApplied Geochemistry
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The Messinian salinity crisis in the Mediterranean basin: A reassessment of the data and an integrated scenario

2006

Abstract After a long period of controversial debate about the interpretation of the Messinian salinity crisis (MSC), a near consensus existed since the ODP Leg 42A for a model keeping the major lines of the deep basin-shallow water model initially proposed by Hsu et al. (1973) . The knowledge of the crisis was improved since the 1995s by the availability of a very accurate astronomically calibrated timescale. The debate about its interpretation was then reactivated by several new scenarios that questioned most the major aspects of the previous classical models. The updated re-examination of the most salient features along with consideration of the hydrological requirements for evaporite de…

Settore GEO/02 - Geologia Stratigrafica E SedimentologicaEvaporiteClimateStratigraphyScenarioGeologySettore GEO/01 - Paleontologia E Paleoecologiaengineering.materialStructural basinCauseDeposition (geology)Water levelOcean recordSedimentary depositional environmentPaleontologyMessinianErosionStage (stratigraphy)engineeringHaliteSalinity crisiGlacial periodGeologySedimentary Geology
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Regional variations in the chemical and helium–carbon isotope composition of geothermal fluids across Tunisia

2011

Abstract Tunisia has numerous thermo-mineral springs. Previous studies have shown that their chemical composition and occurrence are strongly influenced by the regional geology. However little work has been done so far to study the isotopic composition of volatiles associated with these geothermal manifestations. Here, we report on the results of an extensive survey of both natural hot springs and production wells across Tunisia, aimed at investigating the spatial distribution of thermal fluids' geochemical characteristics and He–C isotopic composition. The chemistry of the analyzed samples highlights the heterogeneity of the water mineralization processes in Tunisia, as a consequence of th…

Tunisia010504 meteorology & atmospheric sciencesEarth scienceGeochemistryAquiferengineering.material010502 geochemistry & geophysics01 natural sciencesMantle (geology)Geochemistry and PetrologyTunisia; Helium isotopes; Carbon isotopes; Geothermal fluids; Groundwaters; Thermal springs[SDU.ENVI]Sciences of the Universe [physics]/Continental interfaces environmentGroundwaterChemical compositionGeothermal gradientComputingMilieux_MISCELLANEOUS0105 earth and related environmental sciences[SDU.OCEAN]Sciences of the Universe [physics]/Ocean Atmospheregeographygeography.geographical_feature_categoryRiftCarbon isotopeThermal springsGeologyHelium isotopeSettore GEO/08 - Geochimica E Vulcanologia13. Climate actionIsotopes of carbonMagmatismengineeringHaliteGeothermal fluidGeologyChemical Geology
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